Multilocus sequence typing of an emerging Cryptosporidium hominis subtype in the United States

Yaoyu Feng1, Narry Tiao, Na Li

  • 1State Key Laboratory of Bioreactor Engineering, School of Resources and Environmental Engineering, East China University of Science and Technology, Shanghai, China.

Insights

The emergence of the Cryptosporidium hominis IaA28R4 subtype is linked to increased cryptosporidiosis. Genetic recombination and distinct subpopulations suggest rapid evolution and multiple origins for this virulent subtype in the US.

Area of Science:

  • Infectious Diseases
  • Parasitology
  • Molecular Epidemiology

Background:

  • Cryptosporidiosis incidence has risen in the US since 2005.
  • A novel Cryptosporidium hominis subtype, IaA28R4 (based on the 60-kDa glycoprotein (gp60) locus), has emerged in sporadic and outbreak cases.

Purpose of the Study:

  • To genetically characterize the emerging IaA28R4 subtype of Cryptosporidium hominis.
  • To investigate the population structure and evolutionary dynamics of IaA28R4 in the United States.

Main Methods:

  • Multilocus sequence typing (MLST) was performed on 62 IaA28R4 specimens and 33 other C. hominis gp60 subtypes.
  • Genetic markers included eight loci, with a focus on the gp60 and DZ-HRGP loci.
  • Population genetic analyses were used to assess genetic heterogeneity and recombination.

Main Results:

  • Extensive genetic heterogeneity was observed within the IaA28R4 subtype.
  • Specimens from Ohio and southwestern states formed two distinct subpopulations, indicating at least two origins.
  • Discordance between gp60 and other markers, particularly DZ-HRGP, suggested genetic recombination within IaA28R4.

Conclusions:

  • The IaA28R4 subtype exhibits significant genetic diversity and evidence of recombination.
  • Two distinct subpopulations of IaA28R4 suggest multiple introductions or origins in the US.
  • Genetic recombination may drive the emergence of the virulent IaA28R4 subtype, with rapid evolution observed in large outbreaks.